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A Virus Scanning Engine Using an MPU and an IGU Based on Row-Shift Decomposition

机译:基于行移位分解的MPU和IGU的病毒扫描引擎

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This paper shows a virus scanning engine using two-stage matching. In the first stage, a binary CAM emulator quickly detects a part of the virus pattern, while in the second stage, the MPU detects the full length of the virus pattern. The binary CAM emulator is realized by an index generation unit (IGU) based on row-shift decomposition. The proposed system uses two off-chip SRAMs and a small FPGA. Thus, the cost and the power consumption are lower than the TCAM-based system. The system loaded 1,290,617 ClamAV virus patterns. As for the area and throughput, this system outperforms existing two-stage matching systems using FPGAs.
机译:本文展示了使用两阶段匹配的病毒扫描引擎。在第一阶段,二进制CAM仿真器快速检测病毒码的一部分,而在第二阶段,MPU检测病毒码的全长。二进制CAM仿真器由基于行移位分解的索引生成单元(IGU)实现。拟议的系统使用两个片外SRAM和一个小型FPGA。因此,成本和功耗低于基于TCAM的系统。该系统加载了1,290,617个ClamAV病毒码。关于面积和吞吐量,该系统优于使用FPGA的现有两阶段匹配系统。

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